about
The application of multiplex fluorimetric sensor for the analysis of flavonoids content in the medicinal herbs family Asteraceae, Lamiaceae, RosaceaeThe Contribution of Buckwheat Genetic Resources to Health and Dietary DiversityGenotypically Identifying Wheat Mesophyll Conductance Regulation under Progressive Drought Stress.Frequently asked questions about in vivo chlorophyll fluorescence: practical issues.Applying hyperspectral imaging to explore natural plant diversity towards improving salt stress tolerance.Frequently asked questions about chlorophyll fluorescence, the sequel.Low PSI content limits the photoprotection of PSI and PSII in early growth stages of chlorophyll b-deficient wheat mutant lines.Photosynthetic electron transport and specific photoprotective responses in wheat leaves under drought stress.Photosynthetic proton and electron transport in wheat leaves under prolonged moderate drought stress.Photosynthetic responses of sun- and shade-grown barley leaves to high light: is the lower PSII connectivity in shade leaves associated with protection against excess of light?Reduced glutamine synthetase activity plays a role in control of photosynthetic responses to high light in barley leaves.Identification of nutrient deficiency in maize and tomato plants by in vivo chlorophyll a fluorescence measurements.Wheat plant selection for high yields entailed improvement of leaf anatomical and biochemical traits including tolerance to non-optimal temperature conditions.Melatonin alleviates low PS I-limited carbon assimilation under elevated CO2 and enhances the cold tolerance of offspring in chlorophyll b-deficient mutant wheat.Lettuce flavonoids screening and phenotyping by chlorophyll fluorescence excitation ratio.Effect of photosystem I inactivation on chlorophyll a fluorescence induction in wheat leaves: Does activity of photosystem I play any role in OJIP rise?Erratum to: Frequently asked questions about chlorophyll fluorescence, the sequel.Repetitive light pulse-induced photoinhibition of photosystem I severely affects CO2 assimilation and photoprotection in wheat leaves.High temperature specifically affects the photoprotective responses of chlorophyll b-deficient wheat mutant lines.Comparative analysis of bioactive phenolic compounds composition from 26 medicinal plants.Anthocyanins of Coloured Wheat Genotypes in Specific Response to SalStressPhotosystem II thermostability in situ: environmentally induced acclimation and genotype-specific reactions in Triticum aestivum LPhenotyping of isogenic chlorophyll-less bread and durum wheat mutant lines in relation to photoprotection and photosynthetic capacityTransient Heat Waves May Affect the Photosynthetic Capacity of Susceptible Wheat Genotypes Due to Insufficient Photosystem I Photoprotection
P50
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P50
description
hulumtues
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researcher
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wetenschapper
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հետազոտող
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name
Marek Zivcak
@ast
Marek Zivcak
@en
Marek Zivcak
@es
Marek Zivcak
@nl
Marek Zivcak
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type
label
Marek Zivcak
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Marek Zivcak
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Marek Zivcak
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Marek Zivcak
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Marek Zivcak
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prefLabel
Marek Zivcak
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Marek Zivcak
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Marek Zivcak
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Marek Zivcak
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Marek Zivcak
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P1053
B-2946-2015
P106
P1153
24077825600
57192544584
P2038
Marek_Zivcak
P21
P2798
P31
P3829
P496
0000-0001-8165-3369
P569
2000-01-01T00:00:00Z